Abstract:
A milking device includes a vessel and cover plate. The vessel and the cover plate form a sealed volume that is internally divided into a collecting chamber, a vacuum chamber and an air intake chamber. The collecting chamber is arranged between the vacuum chamber and the air intake chamber. The vessel has a first internal wall that separates the collecting chamber from the air intake chamber, with a first passage between the collecting chamber and the air intake chamber arranged at the first internal wall. The vessel has a second internal wall that separates the collecting chamber from the vacuum chamber, with a second passage between the collecting chamber and the vacuum chamber arranged at the second internal wall.
Abstract:
A arrangement for milking animals includes a milking station, a transport conduit, a main milk tank storing milk from the milking station, a connection conduit extending from the transport conduit to the main milk tank, a cleaning liquid arrangement, and a valve arrangement. From the milking station a connection pipe leads to the transport conduit at a connection point. The cleaning liquid arrangement is connected to the transport conduit via the valve arrangement. The valve arrangement is positionable in at least a first position and a second position. In the first position the transport conduit forms a loop such that two flow paths from the connection point to the connection conduit are provided by the transport conduit, and in the second position the loop is interrupted such that one flow path only from the connection point to the connection conduit is provided by the transport conduit.
Abstract:
The invention is directed to a milk conduit, a milk conduit device, a milk-receiving member and a milking member, wherein a milk conduit includes a first end portion for connection to a milk-receiving member, the first end portion including an inner sleeve section made of a first material and an outer sleeve section joined to the inner sleeve section and made of a second material, which is more rigid than the first material, and the outer sleeve section includes an outer peripheral surface and at least one projection extending outwardly from the outer peripheral surface, the projection having a peripheral extension of less than 180°, and engaged by a coupling member on the milk-receiving member.
Abstract:
A safety valve device for a milking installation for milking milk-producing animals having a first valve with a first port and with a first port connector, a second valve with a second port and with a second port connector, a third valve with a third port and a third port connector, a drive, a common actuator, and at least one valve spring, and arranged so that the first port connector of the first valve is in fluid communication with the second port connector of the second valve, and the safety valve device can be moved between a first switching position, in which the first valve and the second valve are closed in order to block the first port and the second port and the third valve, is open a transition position, in which the first valve, the second valve and the third valve are closed, and a second switching position, in which the first valve and the second valve are open to connect the first port to the second port and the third valve is closed to block the third port.
Abstract:
The invention relates to a milking unit comprising a milk collection part and at least two milk tubes that are connected to the milk collection part. At least one end of the milk tube has an essentially spherical clamping body, the central point of the clamping body being offset in relation to the longitudinal axis (S) of the milk tube and/or the clamping body having a channel with a mouth. The longitudinal axis (S) penetrates a plane, on which the cross-sectional surface of the mouth lies at an angle that is not equal to 90°.
Abstract:
A combination of a teat cup and a flexible milk tube is shown. The flexible milk tube has a main duct and a plurality of secondary ducts for discharging milk from the teat cup and for applying vacuum in the teat cup. The main duct is confined by a duct wall extending around the main duct. The secondary ducts are included in the duct wall of the main duct. By including the plurality of secondary ducts in the duct wall of the main duct the flexible milk tube as a whole has a smaller cross-section than that of the known milk tube. The plurality of secondary ducts no longer need separate duct walls forming separate tubes either connected or not with the flexible milk tube comprising the main duct. This results in space saving.
Abstract:
A combination of a teat cup and a flexible milk tube is shown. The flexible milk tube has a main duct and a plurality of secondary ducts for discharging milk from the teat cup and for applying vacuum in the teat cup. The main duct is confined by a duct wall extending around the main duct. The secondary ducts are included in the duct wall of the main duct. By including the plurality of secondary ducts in the duct wall of the main duct the flexible milk tube as a whole has a smaller cross-section than that of the known milk tube. The plurality of secondary ducts no longer need separate duct walls forming separate tubes either connected or not with the flexible milk tube comprising the main duct. This results in space saving.
Abstract:
To improve the transportation away of the milk within an arrangement comprising a teat rubber and a milk hose which has a curved section, wherein the arrangement has a flow path for conducting away milked milk, which flow path is connected to the surrounding atmosphere via a channel, it is proposed that the channel is designed in such a manner that the flow direction of the air flowing through the channel into the flow path of the milk corresponds essentially to the flow direction of the milk, and the channel is formed in one of the walls of the curved section.
Abstract:
Closing device assembly for systems for milking animals, provided with at least one primary passage and at least two secondary passages, wherein the primary and secondary passages are provided with first and second connecting edges, respectively, with respective openings each having an axis, further provided with at least one closing device for at least one unused, non-selected secondary passage, which closing device is provided with a closing edge, wherein of each set of connecting edges and closing edges to be connected to each other in each case at least one is provided with a seal, wherein the closing device assembly further comprises a first drive unit for mutual displacement of the first connecting edge and the second connecting edge of a selected secondary passage from an uncoupled position in which the axes of their openings are not in line with each other to a position in which the axes of their openings are in line, a coupling line, with each other, and a second drive unit for bringing said connecting edges against each other.
Abstract:
A device for milking animals includes a milking robot for automatically connecting at least two teat cups to the teats of an animal to be milked. The milk yielded is collected in a milk container. In each milk line, between a respective teat cup and the milk container, there is provided an auxiliary reservoir for collecting milk obtained at the beginning of the milking process. The auxiliary reservoir has an outlet aperture with a closing device. Each auxiliary reservoir is disposed in a respective mounting block, the various mounting blocks being arranged side by side, and the device is provided with an arrangement for simultaneously operating the closing devices.